All-in-one computer
Abstract
An all-in-one computer including a display host, a computing host, and a first hinge is provided. The display host includes a stand and a main screen. The stand supports the main screen on a platform. The computing host is electrically connected to the display host. The computing host includes a computing module and a vice screen. The main screen and the vice screen respectively stand on the platform. The first hinge is connected between the main screen and the computing host. A display area of the main screen is greater than a display area of the vice screen. The computing module drives the main screen and the vice screen to respectively output a first display content and a second display content.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An all-in-one computer, comprising:
a display host, comprising a stand and a main screen, wherein the stand supports the main screen on a platform; a computing host, electrically connected to the display host, the computing host comprising a computing module and a vice screen, wherein the main screen and the vice screen respectively stand on the platform; and a first hinge, connected between the main screen and the computing host, wherein a display area of the main screen is greater than a display area of the vice screen, and the computing module drives the main screen and the vice screen to respectively output a first display content and a second display content.
2 . The all-in-one computer according to claim 1 , wherein the computing host pivotally rotates relative to the display host through the first hinge to switch between an expanded state and a collapsed state, wherein in the expanded state, the computing host forms an obtuse angle relative to the display host, and the main screen and the vice screen are both facing a front side of the display host, and in the collapsed state, the computing host is folded on a rear side of the display host, so that the main screen and the vice screen face away from each other.
3 . The all-in-one computer according to claim 1 , further comprising a lens assembly, wherein the lens assembly comprises a lens module, an electrical connector module, and a second hinge, wherein the electrical connector module is detachably structurally assembled to the main screen of the display host or the computing host, during structural assembly, the lens module is electrically connected to the computing module through the electrical connector module, and the second hinge is connected between the lens module and the electrical connector module, so that the lens module pivotally rotates relative to the electrical connector module through the second hinge.
4 . The all-in-one computer according to claim 3 , wherein image data obtained by the lens module is mapped as the second display content of the vice screen.
5 . The all-in-one computer according to claim 1 , further comprising a storage stand folded and stored or unfolded at a side of the main screen and opposite to the computing host, wherein when the storage stand is unfolded at the side of the main screen, an external object is adapted to be carried by the storage stand.
6 . The all-in-one computer according to claim 5 , wherein the storage stand comprises a fixed unit and a moving unit, wherein the moving unit is movably coupled to the side of the main screen and is located on the fixed unit after being unfolded at the main screen, and the external object is adapted to be clamped between the fixed unit and the moving unit.
7 . The all-in-one computer according to claim 6 , wherein the external object is a portable mobile device, wherein the portable mobile device is adapted to be connected to the computing host via wireless or wired signals, and a third display content of the portable mobile device is different from the second display content.
8 . The all-in-one computer according to claim 1 , further comprising an expansion accessory disposed on a frame or a base of the stand and electrically connected to the computing module, wherein the frame is connected between the base and the main screen.
9 . The all-in-one computer according to claim 1 , further comprising a heat dissipation module disposed in the computing host, wherein the heat dissipation module comprises a first fan and a second fan, wherein the first fan provides an intake airflow from an external environment to an interior of the computing host, and the second fan provides at least one discharge airflow from the interior of the computing host to the external environment.
10 . The all-in-one computer according to claim 9 , wherein the computing host has a first air inlet surface and a second air inlet surface opposite to each other, wherein the first fan is located between the first air inlet surface and the second air inlet surface, so that the intake airflow passes through the first air inlet surface and the second air inlet surface and enters the computing host via the first fan.
11 . The all-in-one computer according to claim 9 , wherein the discharge airflow comprises a first airflow and a second airflow, wherein a direction of the second airflow is away from the main screen, and a direction of the first airflow is perpendicular to the direction of the second airflow.
12 . The all-in-one computer according to claim 11 , wherein the second fan is aligned with the first fan, and the first airflow is blown out of the computing host in a direction away from the first fan.
13 . The all-in-one computer according to claim 1 , wherein the computing host comprises a body, a cover, and a latch, wherein the cover is pivotally connected to the body and a pivotal connection position is adjacent to the first hinge, and the latch is disposed on at least one of the body and the cover, so that when the cover pivotally rotates relative to the body and is closed on the body, the latch combines and fixes the cover and the body together.
14 . The all-in-one computer according to claim 13 , wherein the vice screen is exposed from the computing host through the cover.Join the waitlist — get patent alerts
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